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Multiple mechanisms are responsible for altered expression of gap junction genes during oncogenesis in rat liver
M J Neveu1, J R Hully, K L Babcock
1McArdle Laboratory for Cancer Research, University of Wisconsin, Madison.
Abstract:
Although several abnormalities in gap junction (GJ) structure and/or function have been described in neoplasms, the molecular mechanisms responsible for many of the alterations remain unknown. The identification of a family of GJ proteins, termed connexins, prompted this study of connexin32 (Cx32), connexin26 (Cx26) and connexin43 (Cx43) expression during rat hepatocarcinogenesis. Using antibody, cDNA and cRNA probes, we investigated connexin mRNA and protein expression in preneoplastic and neoplastic rat livers. In normal liver, Cx32 is expressed in hepatocytes throughout the hepatic acinus, Cx26 is restricted to periportal hepatocytes, and Cx43 is expressed by mesothelial cells forming Glisson's capsule. Most preneoplastic altered hepatic foci generated by diethylnitrosamine (DEN) initiation and either phenobarbital (PB) or 2,3,7,8-dichlorodibenzo-p-dioxin (TCDD) promotion exhibited decreased Cx32 or increased Cx26 staining. Foci from either protocol failed to display Cx43 immunoreactivity. In the majority of PB-promoted foci, Cx32 immunoreactivity decreased independently of changes in mRNA abundance. Continuous thymidine labeling, following cessation of PB promotion, showed that downregulation of Cx32 staining is reversible in foci that are promoter-dependent for growth, but irreversible in lesions that are promoter-independent for growth. Hepatic neoplasms from rats initiated with DEN and promoted with PB or TCDD also displayed modified connexin expression. While all 24 neoplasms studied were deficient in normal punctate Cx32 and Cx26 staining, altered cellular localization of these proteins was apparent in some tumors. Immunoblotting of crude tissue extracts revealed that neoplasms with disordered Cx32 staining showed immunoreactive bands with altered electrophoretic mobility. These observations show that hepatomas may downregulate Cx32 expression through changes in the primary structure of Cx32 or by post-translational modifications. Northern blotting of total tumor mRNAs failed to demonstrate consistent changes in the abundance of Cx32, Cx26 or Cx43 transcripts. Some tumors expressed steady-state transcripts without observable immunoreactivity, indicating that some hepatomas downregulate connexin immunoreactivity independently of mRNA abundance. Increased levels of Cx43 mRNA and protein were found in several neoplasms, but immunostaining was always localized to nonparenchymal cells. Areas of bile duct proliferation and cholangiomas displayed Cx43 staining, whereas, cholangiocarcinomas were deficient in immunoreactivity. These findings show that alterations in the expression of connexins, by either downregulation or differential induction, represent common modifications during hepatocarcinogenesis. Although our results imply that connexins represent useful markers for the boundary between tumor promotion and progression, preneoplastic and neoplastic rat hepatocytes fail to use a common mechanism to modify connexin expression.
Insights
Connexin (GJ protein) expression is altered during rat liver cancer development, with decreased connexin32 and increased connexin26 observed in preneoplastic lesions. These changes, including post-translational modifications, are common in hepatomas and may serve as markers for tumor progression.
Area of Science:
- Cell Biology
- Cancer Research
- Molecular Biology
Background:
- Gap junction (GJ) abnormalities are noted in neoplasms, but underlying molecular mechanisms are often unclear.
- Connexins are GJ proteins, and their expression was investigated during rat hepatocarcinogenesis.
- Specific connexins studied include connexin32 (Cx32), connexin26 (Cx26), and connexin43 (Cx43).
Purpose of the Study:
- To investigate connexin mRNA and protein expression in preneoplastic and neoplastic rat livers.
- To understand the molecular mechanisms behind altered connexin expression during liver cancer development.
- To determine if connexin alterations can serve as markers for tumor promotion and progression.
Main Methods:
- Antibody, cDNA, and cRNA probes were used to examine connexin expression.
- Immunohistochemistry was employed to visualize connexin protein localization and abundance.
- Northern blotting and immunoblotting were used to analyze mRNA and protein levels, respectively.
Main Results:
- Preneoplastic foci showed decreased Cx32 or increased Cx26 staining, with Cx43 absent.
- Cx32 downregulation in some foci was independent of mRNA levels and could be reversible or irreversible.
- Neoplasms exhibited deficient Cx32 and Cx26 staining, with altered localization and electrophoretic mobility of Cx32.
- Connexin downregulation occurred independently of mRNA abundance in some tumors.
- Cx43 expression increased in some neoplasms but was localized to nonparenchymal cells; cholangiocarcinomas lacked Cx43.
Conclusions:
- Alterations in connexin expression (downregulation or differential induction) are common during hepatocarcinogenesis.
- Hepatomas can downregulate Cx32 via changes in primary structure or post-translational modifications.
- Connexins may be useful markers for distinguishing tumor promotion from progression.
- Preneoplastic and neoplastic rat hepatocytes do not share a common mechanism for modifying connexin expression.